High-strength purification plate structure for laboratory

By introducing a high-strength reinforced frame and skeleton into the cleanroom panel, combined with the cleanroom layer and sound insulation layer, the problems of insufficient strength and poor sound insulation of the cleanroom panel in the laboratory are solved, thus achieving a clean and quiet laboratory environment.

CN223631157UActive Publication Date: 2025-12-05LIAONING HAO CLEANING TECH GRP CO LTD
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Patent Information

Application Number
CN202422536952.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-12-05
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

Traditional cleanroom panel structures are prone to deformation or damage in laboratories due to insufficient strength, and they cannot effectively isolate external noise, affecting the working environment.

Method used

The reinforced outer frame and skeleton are made of high-strength materials, combined with a purification layer and a sound insulation layer, and a specially designed cavity and connection structure to enhance structural stability and sound insulation effect.

Benefits of technology

It provides a clean and quiet experimental environment, has good structural strength and stability, is suitable for high-standard laboratories, and reduces installation and maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a high-strength purification plate structure for a laboratory. The high-strength purification plate structure comprises a purification plate, a reinforced outer frame and a reinforced framework, the purification plate is composed of a purification layer and a sound insulation layer, and the purification layer and the sound insulation layer are arranged in an attached mode. The reinforced outer frame is arranged on the edges of the long edges and the short edges of the purification plate; the reinforcing framework is arranged on the outer side wall of the purification plate, meanwhile, the end of the reinforcing framework is connected with the reinforcing outer frame, and by adopting the design of the reinforcing outer frame and the reinforcing framework, the structural strength of the purification plate is remarkably improved, so that the overall structure is more stable, and larger pressure and impact can be borne. The structural improvement not only improves the durability of the purification plate, but also ensures the reliability in various working environments. And in the aspect of the sound insulation effect, the purification layer and the sound insulation layer are tightly attached, and the sound insulation cotton filled in the reinforced outer frame effectively isolates external noise under the combined action, so that a quieter working or living environment is provided for users.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of purification plate structure, and the specific field is a high strength purification plate structure for laboratory. BACKGROUND

[0002] In the laboratory environment, there are strict requirements for air cleanliness and noise control. Traditional purification plate structures usually only focus on the design of the purification layer to ensure air cleanliness, while ignoring structural strength and sound insulation effects. This leads to deformation or damage of the purification plate due to insufficient strength in actual application, and cannot effectively isolate external noise, affecting the working environment of the laboratory.

[0003] In addition, the existing purification plate structure also has some problems in installation and maintenance. For example, the installation process is complex, additional fixing parts and tools are needed, increasing the installation time and cost. At the same time, due to the lack of effective protective measures, the purification plate is easily damaged physically during use, affecting its service life and purification effect. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a high strength purification plate structure for laboratory to solve the problem that the purification plate is easily deformed or damaged due to insufficient strength in actual application, and cannot effectively isolate external noise, affecting the working environment of the laboratory.

[0005] To achieve the above purpose, the utility model provides the following technical scheme: a high strength purification plate structure for laboratory, comprising a purification plate, a reinforced outer frame and a reinforced skeleton; the purification plate is composed of a purification layer and a sound insulation layer, and the purification layer and the sound insulation layer are attached; the reinforced outer frame is arranged at the edge of the long side and the short side of the purification plate; the reinforced skeleton is arranged on the outer side wall of the purification plate, and the end of the reinforced skeleton is connected with the reinforced outer frame.

[0006] The design of the purification plate aims to provide a clean and soundproof environment suitable for places with high environmental requirements such as laboratories. The purification layer is usually composed of high efficiency filter material, which can effectively filter the particles and microorganisms in the air to ensure indoor air quality. The sound insulation layer is composed of sound insulation material to reduce the interference of external noise and ensure a quiet environment during the experiment.

[0007] The reinforced outer frame is set to enhance the overall structural strength of the purification plate, so that it can withstand various physical impacts and pressures during laboratory use. The outer frame is usually made of metal or other high strength materials, which not only protects the purification layer and the sound insulation layer, but also provides additional stability.

[0008] The reinforcing frame further strengthens the structure of the purification plate. The reinforcing frame is usually made of lightweight and high-strength materials such as aluminum alloy or special plastic. The arrangement of the reinforcing frame not only improves the overall strength of the purification plate, but also reduces the overall weight, facilitating installation and maintenance. The end of the reinforcing frame is connected to the reinforcing outer frame, forming a solid frame structure to ensure the stability and durability of the purification plate during use.

[0009] In summary, this laboratory high-strength purification plate structure provides a clean and quiet experimental environment through the combination of the purification layer and the sound insulation layer, as well as the assistance of the reinforcing outer frame and the reinforcing frame. It has good structural strength and stability, and is suitable for various high-standard laboratory environments.

[0010] Preferably, the purification layer is a double-layer structure, located on both sides of the sound insulation layer, and the structure of the sound insulation layer is sound insulation cotton. The design of the purification layer aims to provide efficient air purification function while maintaining good sound insulation effect. It is usually composed of high-efficiency filtering materials, which can effectively filter particles and microorganisms in the air to ensure indoor air quality. In addition, the double-layer design of the purification layer not only improves the efficiency of air purification, but also further reduces the transmission of noise through its structural characteristics, thereby providing clean air while maintaining a quiet environment inside the laboratory.

[0011] The sound insulation layer is mainly responsible for reducing noise interference inside and outside the laboratory, ensuring a quiet environment inside the laboratory, which is conducive to the concentration of experimental personnel and improves the accuracy and safety of experiments. The structure of the sound insulation layer is sound insulation cotton, which has good sound absorption performance and can absorb and reduce the reflection and transmission of noise, thereby providing an ideal acoustic environment for the laboratory.

[0012] Preferably, in the laboratory high-strength purification plate structure, the design of the reinforcing outer frame is crucial. It not only provides additional structural support for the purification plate, but also further enhances the overall performance of the purification plate through its internal special design, such as the first through cavity, the second through cavity and the connecting cavity.

[0013] The relative arrangement of the first through cavity and the connecting cavity allows the purification plate to form a stable connection with the reinforcing outer frame during installation. This design not only improves the stability of the structure, but also ensures that the purification plate can withstand various physical impacts and pressures during laboratory use. In addition, the presence of the first through cavity provides a good filling space for the material of the sound insulation layer, which helps to improve the sound insulation effect.

[0014] The number of second through cavities is 2 and they are arranged relatively, which helps to evenly distribute the pressure borne by the purification plate, further enhancing its structural strength.

[0015] The position of the connecting cavity is adjacent to the purification plate, which not only facilitates the connection of the purification plate and the reinforced outer frame, but also provides stable support for the high-efficiency filtering material of the purification layer. This design ensures that the purification layer can effectively filter particles and microorganisms in the air, maintaining indoor air quality.

[0016] Preferably, a fitting block is provided in the connecting cavity, which is fixedly connected to the purification plate. The design of the fitting block makes the connection between the purification plate and the reinforced outer frame more secure, and also helps to fix and seal the sound insulation material, further improving the overall performance of the purification plate.

[0017] Preferably, the length of the first through cavity is greater than the distance between the long sides of the two second through cavities, and both the first through cavity and the second through cavity are filled with sound insulation cotton. This design not only increases the sound insulation effect of the purification plate, but also improves its structural strength and stability. The filling of sound insulation cotton enables the purification plate to have certain heat insulation performance while achieving sound insulation, which is beneficial to the temperature control of the laboratory internal environment.

[0018] Preferably, the reinforced outer frame ingeniously combines the first frame rod and the second frame rod, which are respectively placed on the long side and the short side of the purification plate, forming a solid support structure. The ends of the first frame rod and the second frame rod are designed with a bevel of degrees, which not only allows the two frame rods to fit closely together, but also presents a harmonious beauty in visual sense. This bevel fitting method not only enhances the stability of the connection part, but also effectively disperses the stress points, thereby improving the structural strength and stability of the entire purification plate. In addition, this design may also help to simplify the operation steps during installation, making the assembly process more efficient and convenient. In general, this design of the reinforced outer frame not only provides additional support in structure, but also achieves a good balance in functionality and aesthetics.

[0019] Preferably, an L-shaped connecting plate is provided at the connection between the first frame rod and the second frame rod, with the two straight edges of the L-shaped connecting plate connected to the first frame rod and the second frame rod respectively and fixed by screws or welding. The design of the L-shaped connecting plate not only increases the structural strength of the purification plate, but also provides additional sound insulation effect, further improving the overall performance of the purification plate.

[0020] At the connection point of the first frame rod and the second frame rod, the two right-angle edges of the L-shaped connecting plate are respectively closely connected with the first frame rod and the second frame rod, and through accurate screw fixing or welding process, the stability of the connection is ensured. The introduction of the L-shaped connecting plate not only significantly enhances the structural strength of the purification plate, making it more stable and less likely to deform under external force, but also provides additional sound insulation effect due to its special material and design. This sound insulation effect can effectively reduce the transmission of external noise, thereby providing a more quiet environment for the space where the purification plate is located. Therefore, the design of the L-shaped connecting plate plays a dual role in improving the overall performance of the purification plate, both enhancing the stability of the structure and improving the sound insulation effect, bringing a more quality product experience to the user.

[0021] Preferably, an outer protective plate is specially designed on the frame rod of the reinforced skeleton, and the inner end face of the protective plate closely matches the purification plate to ensure that there is no gap between them. The connection part of the outer protective plate and the reinforced skeleton is equipped with a sealing layer, which not only ensures the stability of the connection, but also effectively prevents the penetration of air and noise. The main function of the outer protective plate is to provide additional protection for the purification plate, avoiding damage to the purification layer and the sound insulation layer caused by external environmental factors, thereby prolonging the service life of the purification plate. In addition, the presence of the outer protective plate helps to enhance the overall structural strength and stability of the purification plate, ensuring its performance under various working conditions. The design of the sealing layer further improves the sealing performance of the purification plate, ensuring the maximization of the purification effect, while effectively isolating external noise interference, creating a more quiet and clean environment for the user.

[0022] Preferably, the design of the reinforced skeleton is unique, which is mainly composed of the first frame rod and the second frame rod, and the number of the second frame rod is 2. These second frame rods are arranged in a cross shape with the first frame rod, forming a solid support network. In order to further enhance the stability and overall strength of the structure, a cross-shaped connecting plate is specially designed at the connection part of the first frame rod and the second frame rod. The cross-shaped edges of the cross-shaped connecting plate are tightly combined with the first frame rod and the second frame rod through accurate screw fixing or welding process, ensuring the firmness and durability of the connection.

[0023] This structural design not only significantly improves the structural stability of the purification plate, but also effectively disperses the stress points by increasing the connection points and cross supports, reducing stress concentration and improving the overall strength and stability of the purification plate. In addition, the addition of the cross-shaped connecting plate not only provides additional support in structure, but also has a positive impact on acoustic performance. Its unique design helps to block the propagation path of sound waves, thereby providing additional sound insulation effect, which is of great significance to the performance improvement of the purification plate in noise control. Therefore, this design not only optimizes the structure, but also doubles the improvement in acoustic performance, significantly improving the overall performance of the purification plate.

[0024] Compared with the prior art, the utility model discloses the beneficial effects are: through adopting the design of reinforcing outer frame and reinforcing framework, the structural strength of purification board is improved significantly, make whole structure more stable, can bear greater pressure and impact. This structural improvement not only improves the durability of purification board, but also ensures the reliability under various working environments.

[0025] In the sound insulation effect aspect, the close adhesion of the purification layer and the sound insulation layer and the sound insulation cotton filled in the reinforcing outer frame work together to effectively isolate external noise, providing a more quiet working or living environment for the user. This double sound insulation design not only improves the user experience, but also makes the purification board perform well in noise control.

[0026] In order to facilitate installation and maintenance, the reinforcing outer frame of the purification board is specially designed with embedded blocks, which can be fixedly connected with other parts of the purification board, thereby simplifying the installation process and reducing the time and manpower required for installation. At the same time, this design also facilitates future maintenance and replacement, improving the maintainability of the purification board.

[0027] In terms of material utilization, by optimizing the design, the length of the first through cavity is greater than the distance between the long edges of the two second through cavities. This design not only improves the efficiency of material use, but also reduces production costs, so that the purification board has high performance while also having high economic efficiency.

[0028] The convenience of the structural design is also a highlight of the purification board. The end of the first frame rod and the second frame rod adopts a 45-degree bevel design, which makes the mutual adhesion of the two more compact, easy to process and assemble, thereby improving production efficiency and reducing production costs.

[0029] In order to improve the reliability of the connection, the purification board adopts an L-shaped connecting plate, which is fixed by screws or welding. This design significantly enhances the connection strength between the first frame rod and the second frame rod, ensuring the stability and durability of the entire structure.

[0030] In terms of external protection performance, the setting of the external protection plate not only protects the purification board itself, but also enhances the protection effect through the sealing layer, effectively preventing the influence of external factors such as dust and water vapor on the interior of the purification board, thereby prolonging the service life of the purification board.

[0031] Finally, in order to further improve the stability of the structure, the number of second frame rods is set to 2 and is arranged in cross with the first frame rod and is fixed by a cross connecting plate. This design makes the entire reinforcing framework more stable and can better support the purification board, maintaining stable performance even in harsh working environments. BRIEF DESCRIPTION OF DRAWINGS

[0032] Figure 1 It is the front view of the sectional schematic view of the utility model;

[0033] Figure 2 It is the overhead schematic view of the utility model;

[0034] Figure 3 It is Figure 1 The enlarged structural schematic view of A in the middle.

[0035] In the drawing: 1, purification plate; 2, reinforcing outer frame; 3, reinforcing framework; 4, first through cavity; 5, second through cavity; 6, connecting cavity; 7, cross connecting plate; 8, fitting block; 9, L-shaped connecting plate; 10, outer protective plate; 1-1, purification layer; 1-2, sound insulation layer. DETAILED DESCRIPTION

[0036] The technical scheme in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the utility model.

[0037] Please refer to Figures 1-3 The utility model provides a kind of technical scheme: a high-strength purification plate structure for laboratory, including purification plate 1, reinforcing outer frame 2 and reinforcing framework 3;Purification plate 1 is composed of purification layer 1-1 and sound insulation layer 1-2, purification layer 1-1 and sound insulation layer 1-2 are attached;Reinforcing outer frame 2 is located at the edge of the long side and the short side of purification plate 1;Reinforcing framework 3 is located at the outer side wall of purification plate 1, while the end of reinforcing framework 3 is connected with reinforcing outer frame 2.

[0038] The design of purification plate 1 aims to provide a clean and soundproof environment, suitable for laboratory and other places with high environmental requirements.Purification layer 1-1 is usually composed of high-efficiency filter material, which can effectively filter particles and microorganisms in the air and ensure indoor air quality.Sound insulation layer 1-2 is composed of sound insulation material, which is used to reduce the interference of external noise and ensure a quiet environment during the experiment.

[0039] The setting of reinforcing outer frame 2 is to enhance the overall structural strength of purification plate 1, so that it can withstand various physical impacts and pressures during laboratory use.Reinforcing outer frame 2 is usually made of metal or other high-strength materials, not only to protect purification layer 1-1 and sound insulation layer 1-2, but also to provide additional stability.

[0040] The reinforcing framework 3 further strengthens the structure of the purification plate 1. The reinforcing framework 3 is usually made of lightweight and high-strength materials such as aluminum alloy or special plastic. The arrangement of the reinforcing framework 3 not only improves the overall strength of the purification plate, but also reduces the overall weight, facilitating installation and maintenance. The end of the reinforcing framework 3 is connected to the reinforcing outer frame 2, forming a solid frame structure to ensure the stability and durability of the purification plate during use.

[0041] In summary, this laboratory high-strength purification plate structure provides a clean and quiet experimental environment through the combination of the purification layer 1-1 and the sound insulation layer 1-2, as well as the assistance of the reinforcing outer frame 2 and the reinforcing framework 3. It has good structural strength and stability, and is suitable for various high-standard laboratory environments.

[0042] Specifically, the purification layer 1-1 is a double-layer structure, located on both sides of the sound insulation layer 1-2, and the structure of the sound insulation layer 1-2 is sound insulation cotton. The design of the purification layer 1-1 aims to provide efficient air purification function while maintaining good sound insulation effect. It is usually composed of high-efficiency filtering materials, which can effectively filter particles and microorganisms in the air to ensure indoor air quality. In addition, the double-layer design of the purification layer 1-1 not only improves the efficiency of air purification, but also further reduces the transmission of noise through its structural characteristics, thereby providing clean air while maintaining a quiet environment inside the laboratory.

[0043] The sound insulation layer 1-2 is mainly responsible for reducing noise interference inside and outside the laboratory, ensuring a quiet environment inside the laboratory, which is conducive to the concentration of experimental personnel and improves the accuracy and safety of experiments. The structure of the sound insulation layer 1-2 is sound insulation cotton, which has good sound absorption performance and can absorb and reduce the reflection and transmission of noise, thereby providing an ideal acoustic environment for the laboratory.

[0044] Specifically, in the laboratory high-strength purification plate structure, the design of the reinforcing outer frame 2 is crucial. It not only provides additional structural support for the purification plate 1, but also further enhances the overall performance of the purification plate through its internal special design, such as the first through cavity 4, the second through cavity 5, and the connecting cavity 6.

[0045] The relative arrangement of the first through cavity 4 and the connecting cavity 6 allows the purification plate 1 to form a stable connection with the reinforcing outer frame 2 during installation. This design not only improves the stability of the structure, but also ensures that the purification plate can withstand various physical impacts and pressures during laboratory use. In addition, the presence of the first through cavity 4 provides a good filling space for the material of the sound insulation layer 1-2, which helps to improve the sound insulation effect.

[0046] The second through cavity 5 is arranged in two and is relatively arranged, which helps to evenly distribute the pressure borne by the purification plate 1, further enhancing its structural strength.

[0047] The position of the connecting cavity 6 is adjacent to the purification plate 1, which not only facilitates the connection of the purification plate 1 and the reinforced outer frame 2, but also provides stable support for the high-efficiency filtering material of the purification layer 1-1. This design ensures that the purification layer 1-1 can effectively filter particles and microorganisms in the air, maintaining indoor air quality.

[0048] Specifically, the connecting cavity 6 is provided with a fitting block 8, which is fixedly connected with the purification plate 1. The design of the fitting block 8 makes the connection between the purification plate 1 and the reinforced outer frame 2 more secure, and also helps to fix and seal the sound insulation material, further improving the overall performance of the purification plate.

[0049] Specifically, the length of the first through cavity 4 is greater than the distance between the long edges of the two second through cavities 5, and both the first through cavity 4 and the second through cavities 5 are filled with sound insulation cotton. This design not only increases the sound insulation effect of the purification plate, but also improves its structural strength and stability. The filling of sound insulation cotton enables the purification plate to have certain heat insulation performance while insulating sound, which is conducive to temperature control of the internal environment of the laboratory.

[0050] Specifically, the reinforced outer frame 2 is designed with a first frame rod and a second frame rod, which are respectively arranged on the long edges and short edges of the purification plate 1, forming a solid support structure. The ends of the first frame rod and the second frame rod are designed with a 45-degree bevel, which not only allows the two frame rods to fit closely together, but also presents a harmonious beauty in vision. This bevel fitting method not only enhances the stability of the connection part, but also effectively disperses the stress points, thereby improving the structural strength and stability of the entire purification plate. In addition, this design may also help to simplify the operation steps during installation, making the assembly process more efficient and convenient. In general, this design of the reinforced outer frame 2 not only provides additional support in structure, but also achieves a good balance in functionality and aesthetics.

[0051] Specifically, the connection between the first frame rod and the second frame rod is provided with an L-shaped connecting plate 9, and the two straight edges of the L-shaped connecting plate 9 are respectively connected with the first frame rod and the second frame rod and fixed by screws or welding. The design of the L-shaped connecting plate 9 not only increases the structural strength of the purification plate, but also provides additional sound insulation effect, further improving the overall performance of the purification plate.

[0052] At the connection site of the first frame rod and the second frame rod, the two straight edges of the L-shaped connecting plate 9 are respectively closely connected with the first frame rod and the second frame rod, and through precise screw fixing or welding process, the stability of the connection is ensured. The introduction of the L-shaped connecting plate 9 not only significantly enhances the structural strength of the purification plate, making it more stable and less likely to deform when subjected to external force, but also provides additional sound insulation effect due to its special material and design. This sound insulation effect can effectively reduce the transmission of external noise, thereby providing a more quiet environment for the space where the purification plate is located. Therefore, the design of the L-shaped connecting plate 9 plays a dual role in improving the overall performance of the purification plate, both enhancing the stability of the structure and improving the sound insulation effect, bringing a more quality product experience to the user.

[0053] Specifically, on the frame rods of the reinforced framework 3, an outer protective plate 10 is specially designed, and the inner end face of the protective plate is closely attached to the purification plate 1, ensuring that there is no gap between the two. The connection site of the outer protective plate 10 and the reinforced framework 3 is equipped with a sealing layer, which not only ensures the stability of the connection, but also effectively prevents the penetration of air and noise. The main function of the outer protective plate 10 is to provide additional protection for the purification plate 1, avoiding damage to the purification layer 1-1 and the sound insulation layer 1-2 caused by external environmental factors, thereby prolonging the service life of the purification plate. In addition, the presence of the outer protective plate 10 also helps to enhance the overall structural strength and stability of the purification plate, ensuring its performance under various working conditions. The design of the sealing layer further improves the sealing performance of the purification plate, ensuring the maximization of the purification effect, while effectively isolating external noise interference, creating a more quiet and clean environment for the user.

[0054] Specifically, the design of the reinforced framework 3 is unique, which is mainly composed of first frame rods and second frame rods, and the number of second frame rods is 2. These second frame rods are arranged in a cross shape with the first frame rods, forming a strong support network. In order to further enhance the stability and overall strength of the structure, cross-shaped connecting plates 7 are specially designed at the connection site of the first frame rods and the second frame rods. The cross-shaped edges of the cross-shaped connecting plates 7 are closely combined with the first frame rods and the second frame rods through precise screw fixing or welding process, ensuring the firmness and durability of the connection.

[0055] This structural design not only significantly improves the structural stability of the purification plate, but also effectively disperses the stress points by increasing the number of connection points and cross supports, reducing stress concentration and improving the overall strength and stability of the purification plate. In addition, the addition of the cross connecting plate 7 not only provides additional structural support, but also has a positive impact on acoustic performance. Its unique design helps to block the propagation path of sound waves, providing additional sound insulation effect, which is of great significance to the performance improvement of the purification plate in noise control. Therefore, this design not only optimizes the structure, but also improves the acoustic performance, significantly improving the overall performance of the purification plate.

[0056] Working principle: When the utility model works, the purification plate 1 is composed of purification layer 1-1 and sound insulation layer 1-2, the purification layer 1-1 is located on both sides of the sound insulation layer 1-2, and the sound insulation layer 1-2 is composed of sound insulation cotton. This double-layer structure design aims to provide purification and sound insulation functions.

[0057] The reinforced outer frame 2 is arranged at the long edge and short edge edge of the purification plate 1, and the inside contains the first through cavity 4, the second through cavity 5 and the connecting cavity 6. The first through cavity 4 and the connecting cavity 6 are oppositely arranged, the number of the second through cavity 5 is 2 and oppositely arranged, and the connecting cavity 6 is adjacent to the purification plate 1. These through cavities help to disperse and absorb sound, enhance sound insulation effect.

[0058] The connecting cavity 6 is provided with an embedded block 8, and the embedded block 8 is fixedly connected with the purification plate 1, which helps to firmly combine the purification plate 1 and the reinforced outer frame 2.

[0059] The length of the first through cavity 4 is greater than the distance between the long edges of the two second through cavities 5, and the first through cavity 4 and the second through cavity 5 are both filled with sound insulation cotton. This further enhances the sound insulation performance.

[0060] The reinforced outer frame 2 is composed of first frame rods and second frame rods, which are arranged at the long edge and short edge of the purification plate 1 respectively, and the end is a 45-degree bevel and is mutually adhered. This design helps to improve the stability and strength of the structure.

[0061] The connecting part of the first frame rod and the second frame rod is provided with an L-shaped connecting plate 9, which is fixed by screws or welding, further strengthening the structure of the outer frame.

[0062] The frame rod of the reinforced framework 3 is provided with an outer protective plate 10, the inner end surface is adhered to the purification plate 1, and the connecting part is provided with a sealing layer, which helps to protect the purification plate 1 and provide additional sound insulation effect.

[0063] The reinforced framework 3 includes first frame rods and second frame rods, and the number of the second frame rods is 2, which are cross arranged with the first frame rods. The connecting part of the first frame rod and the second frame rod is provided with a cross connecting plate 7, which is fixed by screws or welding, ensuring the stability and strength of the framework.

[0064] In summary, the purification plate system realizes the functions of purification and sound insulation through the combination of the purification layer and the sound insulation layer, the design of the reinforced outer frame and the skeleton and the filling of the sound insulation cotton, and ensures the stability and durability of the structure through the use of the fitting blocks, the L-shaped connecting plates and the cross connecting plates.

[0065] In the description of the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connecting", "fixing" should be understood broadly, for example, can be fixed connection, can also be detachable connection, or integrated; can be mechanical connection, can also be electrical connection; can be directly connected, can also be indirectly connected through an intermediate medium, can be the internal communication of two elements or the interaction relationship of two elements. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.

[0066] The standard parts used in the present application can be purchased from the market, and the special-shaped parts can be ordered according to the description and the drawings, and the specific connection mode of each part adopts the conventional means such as bolts, rivets and welding in the prior art, the mechanical, parts and equipment adopt the conventional type in the prior art, and the circuit connection adopts the conventional connection mode in the prior art, which will not be described in detail here.

[0067] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A high-strength, cleanable panel structure for use in a laboratory, characterized by, The utility model relates to a purification board (1) is composed of purification layer (1-1) and sound insulation layer (1-2), and the purification layer (1-1) and sound insulation layer (1-2) are attached arrangement, the utility model relates to a reinforcing outer frame (2) is located in the edge of purification board (1) long side and short side, the utility model relates to a reinforcing skeleton (3) is located in the outside wall of purification board (1), and the end of reinforcing skeleton (3) is connected with reinforcing outer frame (2). The purification layer (1-1) is double-layer structure, and is located on both sides of the sound insulation layer (1-2), and the structure of the sound insulation layer (1-2) is sound insulation cotton. The reinforcing outer frame (2) is provided with a first cavity (4), a second cavity (5) and a connecting cavity (6) in the inside, the first cavity (4) and the connecting cavity (6) are oppositely arranged, the number of the second cavity (5) is two and oppositely arranged, and the connecting cavity (6) is adjacent to the purification board (1). The connecting cavity (6) is provided with an embedded block (8), and the embedded block (8) is fixedly connected with the purification board (1).

2. A high-strength, cleanable sheet structure for laboratory use according to claim 1, characterized in that: The length of the first cavity (4) is greater than the distance between the long sides of the two second cavities (5), and the first cavity (4) and the second cavity (5) are filled with sound insulation cotton.

3. A high-strength, cleanable panel structure for a laboratory as defined in claim 1, wherein: The reinforcing outer frame (2) is composed of a first frame rod and a second frame rod, which are arranged on the long side and the short side of the purification board (1), respectively, and the end of the first frame rod and the second frame rod is a 45-degree bevel, and they are attached to each other.

4. A high-strength, cleanable panel structure for a laboratory as defined in claim 3, wherein: The connecting part of the first frame rod and the second frame rod is provided with an L-shaped connecting plate (9), and the two straight edges of the L-shaped connecting plate (9) are connected with the first frame rod and the second frame rod, respectively, and are fixed by screws or welding.

5. A high-strength, cleanable sheet structure for laboratory use according to claim 3, characterized in that: The frame rod of the reinforcing skeleton (3) is provided with an outer protective plate (10), the inner end surface of the outer protective plate (10) is attached to the purification board (1), and the connecting part of the outer protective plate (10) and the reinforcing skeleton (3) is provided with a sealing layer.

6. A high-strength, cleanable sheet structure for laboratory use according to claim 1, characterized in that: The reinforcing skeleton (3) includes a first frame rod and a second frame rod, the number of the second frame rod is two, which are cross-connected with the first frame rod, and the connecting part of the first frame rod and the second frame rod is provided with a cross-shaped connecting plate (7), and the cross-shaped edges of the cross-shaped connecting plate (7) are fixed with the first frame rod and the second frame rod by screws or welding.

7. A high-strength, cleanable sheet structure for laboratory use according to claim 6, characterized in that: ​ 8. A high-strength, cleanable sheet structure for laboratory use according to claim 6, characterized in that: ​ 9. A high-strength, cleanable sheet structure for laboratory use according to claim 6, characterized in that: ​